CN109994679A - A kind of battery core holding element - Google Patents

A kind of battery core holding element Download PDF

Info

Publication number
CN109994679A
CN109994679A CN201811468015.5A CN201811468015A CN109994679A CN 109994679 A CN109994679 A CN 109994679A CN 201811468015 A CN201811468015 A CN 201811468015A CN 109994679 A CN109994679 A CN 109994679A
Authority
CN
China
Prior art keywords
heat
conducting
conducting plate
tab
battery core
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201811468015.5A
Other languages
Chinese (zh)
Inventor
邱伯谦
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Melsen Power Technology Co Ltd
Original Assignee
Melsen Power Technology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Melsen Power Technology Co Ltd filed Critical Melsen Power Technology Co Ltd
Publication of CN109994679A publication Critical patent/CN109994679A/en
Pending legal-status Critical Current

Links

Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M10/00Secondary cells; Manufacture thereof
    • H01M10/60Heating or cooling; Temperature control
    • H01M10/61Types of temperature control
    • H01M10/613Cooling or keeping cold
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M10/00Secondary cells; Manufacture thereof
    • H01M10/60Heating or cooling; Temperature control
    • H01M10/65Means for temperature control structurally associated with the cells
    • H01M10/655Solid structures for heat exchange or heat conduction
    • H01M10/6554Rods or plates
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M50/00Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
    • H01M50/20Mountings; Secondary casings or frames; Racks, modules or packs; Suspension devices; Shock absorbers; Transport or carrying devices; Holders
    • H01M50/256Carrying devices, e.g. belts
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M50/00Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
    • H01M50/50Current conducting connections for cells or batteries
    • H01M50/531Electrode connections inside a battery casing
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

Landscapes

  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Electrochemistry (AREA)
  • General Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Secondary Cells (AREA)

Abstract

The invention discloses a kind of battery modules battery core holding elements, battery core holding element includes heat-conducting plate, end plate and tab support conducting element, heat-conducting plate includes heat-conducting plate main body and heat-conducting plate side plate, heat-conducting plate main body and heat-conducting plate side plate are integrally formed to form channel-like configuration, heat-conducting plate main body sets aperture, step section is set on heat-conducting plate side plate, end plate and tab support conducting element and the injection molding of heat-conducting plate main body, tab supports in conducting element integrally formed with metal bolumn cap, metal bolumn cap is equipped with screw hole or stud, tab is welded and fixed with confluence piece, confluence piece is constructed by screw screw hole or stud bolt structure is fixed on tab and supports on conducting element, the aperture of heat-conducting plate main body of the present invention, deformation can be reduced, mitigate weight, cell polar ear is fixedly secured on tab support conducting element, and it is not required to bending, it is highly-safe, maintenance is convenient, heat-conducting plate one Body formed is a component, and high production efficiency, weight is low, capacity of heat transmission height etc..

Description

A kind of battery core holding element
(1) technical field
The present invention relates to a kind of lithium ion battery mould group more particularly to a kind of battery modules battery core holding elements.
(2) background technique
Since lithium ion battery has many advantages, such as that voltage is higher, energy density height and cycle performance are high, more and more extensive Ground is applied to the dynamical system of electric vehicle.Lithium ion battery is that the important component of energy is provided for electric vehicle, The working performance of lithium ion battery has been largely fixed the performance of entire electric vehicle.
In practical applications, the battery unit of lithium ion battery carries out series-parallel, different change battery lists according to demand The quantity of member forms battery modules.When the battery unit of lithium ion battery carries out series-parallel, usually pass through soldering or ultrasound Wave soldering directly welds positive and negative tab.Battery modules obtained are light-weight in this way, and energy density is high, but battery Mould group because tab bonding area it is smaller, high current by when fever it is very big, and because electric vehicle in reality Pitch is bigger during use, and the material is soft for tab, and structural stability is bad, and battery plus-negative plate ear may occur Collision short circuit, thus cause safety accident.It is to increase that the battery unit of lithium ion battery, which carries out another series-parallel mode, The independent insulation board component with tab slot and confluence chip part, i.e., by tab after being passed through in the tab slot of insulation board component, Tab is fixed on confluence chip part by the tab slot being then passed through on confluence chip part using the method for welding again later.It is this Mode, although can increase the contact area of tab and the piece that converges to a certain extent, calorific value is relatively when high current passes through It is small, but because of tab, the material is soft, and tab is continued to pass through insulation board component and confluence chip part is very complicated, assembly effect Rate is low, and insulation board component is independent, and the fixation between insulation board and battery modules does not have very good solution method, electronic When vehicles pitch, it is easy to loosen, there are some potential safety problemss.
Meanwhile it being pressed in existing soft bag lithium ionic cell mould group mainly including single battery, fixed frame and heat sink It stacks gradually and is fixed together according to the sequence of heat sink, single battery, fixed frame, single battery and heat sink.Using this When kind mode is stacked, fixed frame and heat sink are independent component, and occupancy volume is relatively large, heavier-weight, energy Density reduces, and assembly efficiency is lower.In addition, fixed frame and heat sink generally have bigger assembly in assembly Error causes the heat dissipation effect of battery modules bad, and has some potential safety problems.
Therefore, studying a kind of novel battery mould group battery core holding element has been urgent need.
(3) summary of the invention
In view of the deficiencies of the prior art, the present invention provides a kind of battery modules battery core holding element, this battery modules With battery core holding element to the support good fixing effect of tab, flow conductivity is strong, and thermally conductive fast, deformation is small, and weight is low, energy density Height, structure is simple, and assembly efficiency is high, structural strength is high and maintenance facilitates.
To achieve the above object, the technical solution of the present invention is as follows: a kind of battery modules battery core holding element, the battery core Holding element includes heat-conducting plate, and the heat-conducting plate includes heat-conducting plate main body and heat-conducting plate side plate, the heat-conducting plate main body and described Heat-conducting plate side plate is integrally formed, and forms channel-like configuration, and the battery core holding element further includes that end plate and tab support conducting element, The end plate and tab support conducting element are fixedly installed on the heat-conducting plate main body, the tab support conducting element inside one It is body formed to have at least one metal bolumn cap, fixed structure is provided on the metal bolumn cap, tab is directly fixedly connected with confluence piece The confluence piece is fixed on the tab by the fixed structure afterwards to support on conducting element, the heat-conducting plate main body is equipped with Aperture.In this way, the bathtub construction that battery core monomer can be packed into heat-conducting plate main body and heat-conducting plate side plate is formed, plays battery core monomer solid It is set for using.Heat-conducting plate main body and heat-conducting plate side plate become a component, compared to the prior art in heat sink and fixed frame Two components can greatly improve assembly efficiency, reduce rigging error, reduce weight, improve energy density, and be more advantageous to Heat dissipation.Converge piece and tab it is fixed after, then by being provided with the fixed structure piece that will converge on metal bolumn cap be fixed on metal bolumn cap On, and then tab and confluence piece can be fixedly secured on tab support conducting element, reached and supported and fixed effect to tab, keep away Exempt from tab to damage in pitch.The end plate is conducive to the positioning and fixation of battery core holding element.Tab supports conducting element The same side or not ipsilateral of heat-conducting plate main body can be set to according to the relative position of battery core anode ear and negative electrode lug.Heat-conducting plate master Body is equipped with aperture, can largely reduce the deformation of heat-conducting plate, while reducing weight, be also beneficial between adjacent battery core Heat exchange.
The present invention is characterized in that the aperture is according to rectangle or helical pattern.It can also be according to other random modes Aperture.
The mode of the invention for being further characterized in that the tab is fixedly connected with the confluence piece is welding.In this way, tab Without bending, tab and confluence piece are connected firmly, and battery pack is lighter, and energy density is also higher.
It is of the invention to be further characterized in that the fixed structure is screw Screw hole structure.
Further, screw hole is provided on the metal bolumn cap, the confluence on piece is equipped with through-hole accordingly.
Further, the confluence piece is fixed on the tab by screw corresponding with the screw hole and supports conducting element On.In this way, being fixedly secured between tab, confluence piece and metal bolumn cap by screw Screw hole structure.When battery modules maintenance simultaneously, Screw Screw hole structure is also beneficial to the replacement of failure battery core monomer, avoids whole scrap.
It is of the invention to be further characterized in that the fixed structure is stud bolt arrangement.
Further, stud is provided on the metal bolumn cap, the confluence on piece is equipped with through-hole accordingly.
Further, the confluence piece is fixed on the tab by bolt corresponding with the stud and supports conducting element On.In this way, being fixedly secured between tab, confluence piece and metal bolumn cap by stud bolt arrangement.When battery modules maintenance simultaneously, Stud bolt arrangement is also beneficial to the replacement of failure battery core monomer, avoids whole scrap.
It is of the invention to be further characterized in that the metal bolumn cap is rectangular or round.
It is of the invention to be further characterized in that the confluence piece is U-shaped or L shape.
It is of the invention to be further characterized in that the end plate and tab support conducting element are ipsilateral.In this way, helping to reduce electricity The height of Chi Mo group, reduces the volume of battery modules, and is not take up the position of heat-conducting plate side plate, is conducive to consolidating for battery core monomer It is fixed.End plate and tab support conducting element quantity respectively at least there are two.According to the design requirement of battery core, end plate and tab support Conducting element may be alternatively located at not ipsilateral.
It is of the invention to be further characterized in that the end plate and tab support conducting element are integrally formed.In this way, dress can be reduced With process, and end plate and tab support conducting element are stronger in conjunction with heat-conducting plate main body.According to design requirement, end plate and pole Auricular branch support conducting element can also be separately formed.
It is of the invention to be further characterized in that the end plate and tab support conducting element are molded into the heat-conducting plate mainboard Type.In this way, end plate and tab support conducting element are firmly combined with heat-conducting plate main body, it is easy to assembly efficient.
The material of the invention for being further characterized in that the end plate and tab support conducting element is insulating materials.In this way, Avoidable short circuit causes security risk.
It is of the invention to be further characterized in that the insulating materials is ABS, PP, PPO or insulating epoxy plate.In this way, the end plate With tab support conducting element other than with preferable insulation performance, intensity also with higher plays better support And fixed function.
It is of the invention to be further characterized in that the metal bolumn cap close to the side of the tab and opposite side not by the insulation Material covering.In this way, metal bolumn cap is directly to contact with tab and confluence piece, internal resistance can be further decreased, improves water conservancy diversion energy Power.
In this way, multiple battery core holding elements can be securely solid in a certain order under the action of battery modules support rod It is fixed.
Of the invention be further characterized in that on the end plate is provided with auxiliary securing member.In this way, firmware is auxiliarily fixed Under effect, multiple battery core holding elements can be further fixedly secured.
Of the invention be further characterized in that on the end plate is provided with position limiting pile.
It is of the invention to be further characterized in that the position limiting pile and the end plate are integrally formed.In this way, being conducive to improve production effect Rate, and battery weight is reduced, improve battery energy density.
It is of the invention be further characterized in that the position limiting pile at least there are two.In this way, at least two position limiting piles are more advantageous to electricity Core holding element is positioned, and is more advantageous to battery assembly and is matched.
Of the invention to be further characterized in that the end plate is provided with limit hole, the limit hole matches adjacent battery core holding element On the position limiting pile.In this way, playing the work of positioning to battery core holding element under the collective effect of position limiting pile and limit hole With being more advantageous to battery assembly and match.
It is of the invention to be further characterized in that the limit hole and the end plate are integrally formed.In this way, being conducive to improve production effect Rate.
It is of the invention to be further characterized in that the end plate is provided with empty slot.In this way, the weight of end plate can be reduced, battery pack is reduced Weight, improve the energy density of battery.
It is of the invention to be further characterized in that the tab support conducting element is provided with empty slot.It is led in this way, tab support can be reduced The weight for flowing part, reduces the weight of battery pack, improves the energy density of battery.
It is of the invention to be further characterized in that the tab support conducting element and the tab on the heat-conducting plate main direction Concordantly.In this way, can avoid lug bending and damage tab.
It is of the invention to be further characterized in that the heat-conducting plate main body is identical with heat-conducting plate side plate thickness.In this way, rapid shaping institute State heat-conducting plate.
The material of the invention for being further characterized in that the heat-conducting plate main body and heat-conducting plate side plate is metal.In this way, heat can It imports or exports from heat-conducting plate main body and heat-conducting plate side plate rapidly, and then control battery core temperature.In addition, metal is also with higher Intensity, and for soft-package battery, battery core monomer is softer, and battery core packaging film is easy to be punctured, thus metal is conducive to protect battery core Monomer avoids being punctured, and also helps to avoid squeezing mutually between battery core monomer when battery core stacks.
It is of the invention to be further characterized in that the metal is one of copper, iron, aluminium and its alloy or a variety of.In this way, thermally conductive Performance is good, and intensity is higher, and production easy to process, and cost is relatively low.
It is of the invention to be further characterized in that the heat-conducting plate side plate includes the first segment connecting with heat-conducting plate main body, step section and Second segment far from heat-conducting plate main body, wherein first segment and second segment are vertical with heat-conducting plate main direction.In this way, being led when adjacent When hot plate is in contact, outer wall that the inner wall of heat-conducting plate side plate second segment can directly with the heat-conducting plate side plate first segment of adjacent heat-conducting plate It fits, multiple heat-conducting plate relative positions being overlapped mutually can both fixed, thus to battery cell therein is accommodated It is positioned and is fixed, and be conducive to battery cell heat dissipation and heating, and maintain temperature relative equilibrium between each battery cell.
It is of the invention to be further characterized in that the heat-conducting plate side plate is being greater than electricity perpendicular to the length on heat-conducting plate main direction The thickness of core, battery core at least one side and heat-conducting plate body contact.In this way, being put into of being not under compression of battery core by heat-conducting plate main body and The channel-like configuration that heat-conducting plate side plate is constituted, and battery core at least one side and heat-conducting plate body contact, and the heat that battery core is generated Amount can run through the export of heat-conducting plate main body or can be heated by heat-conducting plate to battery core.
The step pitch of the invention for being further characterized in that the step section is identical as the thickness of the heat-conducting plate side plate.In this way, leading It when hot plate is superimposed, is more advantageous to heat-conducting plate side plate and is bonded with the heat-conducting plate of adjacent heat-conducting plate, be overlapped mutually to be more advantageous to Multiple heat-conducting plate relative positions are fixed, and are more favorable to thermally conductive.
(4) Detailed description of the invention
Fig. 1 be the present invention be provided with screw screw hole construction and aperture by rectangular arranged battery core holding element and battery core institute group At the structural schematic diagram of battery pack.
Fig. 2 be the present invention be provided with stud bolt structure and aperture by rectangular arranged battery core holding element and battery core institute group At the structural schematic diagram of battery pack.
Fig. 3 is that the present invention is provided with the battery core holding element and battery core institute of screw screw hole construction and aperture by helical pattern Form the structural schematic diagram of battery pack.
In figure: 1- battery core holding element, 11- heat-conducting plate, 111- heat-conducting plate main body, 1111- aperture, 112- heat-conducting plate side Plate, 1121- heat-conducting plate side plate first segment, 1122- heat-conducting plate side plate step section, 1123- heat-conducting plate side plate second segment, 12- end plate, 121- fixation hole, 122- auxiliary securing member, 123- position limiting pile, 124- limit hole, 125- end plate empty slot, the support of 13- tab are led Flow part, 131- metal bolumn cap, 1311- screw hole, 1312- screw, 1313- stud, 1314- bolt, 132- tab support conducting element Empty slot, 14- confluence piece, 141- through-hole, 2- battery core, 21- tab.
(5) specific embodiment
The present invention is described in further detail below in conjunction with the accompanying drawings.
Embodiment one:
As shown in Figure 1, the present invention provides a kind of battery modules battery core holding element 1, battery core holding element 1 includes thermally conductive Plate 11, heat-conducting plate 11 include heat-conducting plate main body 111 and heat-conducting plate side plate 112, heat-conducting plate main body 111 and heat-conducting plate side plate 112 1 It is body formed, and channel-like configuration is formed, so that the assembly efficiency of battery core holding element 1 is higher, weight saving, energy density is higher, Channel-like configuration is but also battery core is more stable safer.Heat-conducting plate main body 111 is equipped with the aperture 1111 arranged according to rectangular mode, So that the deformation of heat-conducting plate main body 111 reduces, weight is reduced, and is also beneficial to heat between adjacent battery core 2 and is exchanged, keeps battery core 2 Between temperature equalization.Heat-conducting plate main body 111 is identical with the thickness of heat-conducting plate side plate 112, and material therefor is metal, and this metal is Aluminium alloy, by heat-conducting plate main body 111 and heat-conducting plate side plate 112 allow battery core 2 heat rapidly with outside batteries heat Exchange maintains battery core heat balance, and the heat-conducting plate main body 111 of metal material and heat-conducting plate side plate 112 can protect battery core 2, Battery core 2 is avoided to be destroyed.Heat-conducting plate side plate 112 is in the thickness for being greater than battery core 2 perpendicular to the length on 111 direction of heat-conducting plate main body Degree, the one side of battery core 2 contacts with heat-conducting plate main body 111, even if so that battery core 2 fever expansion will not be by squeezing at work Pressure, while the heat for being also beneficial to battery core 2 is exchanged with outside batteries heat.Heat-conducting plate side plate 112 includes and heat-conducting plate main body 111 The first segment 1121 of connection, step section 1122 and the second segment 1123 far from heat-conducting plate main body 111, wherein first segment 1121 and the Two section 1123 vertical with 111 direction of heat-conducting plate main body, and the step pitch of step section 1122 is identical as the thickness of heat-conducting plate side plate 112.Electricity When core holding element 1 and the assembling of battery core 2 form battery module, according to design requirement, according to battery core holding element 1, battery core 2, electricity The sequence of core holding element 1 is sequentially overlapped, when superposition, the inner wall of heat-conducting plate side plate second segment 1123 and adjacent battery core holding element The outer wall of 1 heat-conducting plate side plate first segment 1121 is bonded, and battery core 2 is limited at the space being made of adjacent battery core holding element 1 It is interior, play the role of fixed and protects battery core, meanwhile, the heat-conducting plate side plate 112 of adjacent battery core holding element 1 is also in close contact, It is very beneficial for heat exchange.
Battery core holding element 1 further includes end plate 12 and tab support conducting element 13, and end plate 12 and tab support conducting element 13 Material be insulating materials, this insulating materials be ABS.End plate 12 and tab support conducting element 13 are set to heat-conducting plate main body 111 it is ipsilateral, two tabs 21 of battery core 2 are located at opposite side, and the tab support conducting element 13 is set to heat-conducting plate main body 111 Opposite side.End plate 12 and tab support conducting element 13 and 111 injection molding of heat-conducting plate main body, end plate 12 and tab support water conservancy diversion Part 13 is integrally formed.
Fixation hole 121 is provided on end plate 12 to be used for across fixed link (not shown), battery core holding element 1 is secured It is fixed.Auxiliary securing member 122 is additionally provided on end plate 12 for battery core holding element to be auxiliarily fixed.It is additionally provided on end plate 12 Opposite 2 with the integrally formed position limiting pile 123 of end plate, be additionally provided with and the matched limit hole of position limiting pile 123 on end plate 12 124, more than 124 end plate 12 of limit hole is integrally formed.Position limiting pile 123 and limit hole 124 are conducive to fixed when battery core holding element 1 is installed Installation effectiveness is improved in position.It is additionally provided with end plate empty slot 125 on end plate 12, under the premise of proof strength is met the requirements, mitigates electricity The weight of core holding element 1 improves battery energy density.
Tab is supported integrally formed with 2 metal bolumn caps 131 in conducting element 13, which is rectangular, metal column Cap 131 is not covered by the insulating materials of tab support conducting element 13 close to the side of tab 21 and opposite side.On metal bolumn cap 131 It is provided with screw hole 1311, it is corresponding on the piece 14 that converges to be provided with through-hole 141.Confluence piece 14 is U-shaped.The piece 14 that converges is logical with tab 21 It crosses and connection is welded and fixed, screw 1312 passes through the through-hole 141 on confluence piece 14, cooperates with the screw hole 1311 on metal bolumn cap 131, Confluence piece is fixedly secured on metal bolumn cap 131 by screw Screw hole structure, so that tab 21 is fixedly secured in tab It supports on conducting element 13.Metal bolumn cap 131 is directly contacted with tab 21 and confluence piece 14, increases tab 21 and confluence piece 14 Contact area, be conducive to water conservancy diversion and reduce fever.In addition the screw Screw hole structure of metal bolumn cap 131 makes tab 21 and confluence Piece 14 is securely held on tab support conducting element 13.Tab supports conducting element 13 and tab 21 in 111 side of heat-conducting plate main body It is concordant upwards, so that when being fixed on tab support conducting element 13 bending will not occur for tab 21, tab 21 is avoided to jolt When damage.Tab support conducting element empty slot 132 is additionally provided on tab support conducting element 13, before proof strength is met the requirements It puts, mitigates the weight of battery core holding element 1, improve battery energy density.
Embodiment two:
Fig. 2 is the structural schematic diagram of embodiment two.Embodiment two and the difference of embodiment one are: heat-conducting plate main body 111 It is metal with 112 material therefor of heat-conducting plate side plate, this metal is iron-copper.The material of end plate 12 and tab support conducting element 13 Material is insulating materials, and this insulating materials is PP.Stud 1313 is provided on metal bolumn cap 131, it is corresponding on the piece 14 that converges to set It is equipped with through-hole 141.Confluence piece 14 is fixedly connected by welding with tab 21, and stud 1313 passes through the through-hole 141 on confluence piece 14, Cooperate with bolt 1414, confluence piece is fixedly secured on metal bolumn cap 131 by stud bolt arrangement, so that tab 21 It is fixedly secured on tab support conducting element 13.Metal bolumn cap 131 is directly contacted with tab 21 and confluence piece 14, increases pole The contact area of ear 21 and confluence piece 14 is conducive to water conservancy diversion and reduces fever.
Embodiment three:
Fig. 3 is the structural schematic diagram of embodiment three.Embodiment three and the difference of embodiment one are: heat-conducting plate main body 111 It is equipped with the aperture 1111 according to helical pattern, so that the deformation of heat-conducting plate main body 111 reduces, weight is reduced, and is also beneficial to Heat exchanges between adjacent battery core 2, keeps temperature equalization between battery core 2.Confluence piece 14 is L shape, further decreases battery modules Weight.
Above content is enumerating for specific embodiments of the present invention, for the equipment and structure of wherein not detailed description, is answered When being interpreted as that the existing common apparatus in this field and universal method is taken to be practiced.
The above embodiment of the present invention is only to illustrate that technical solution of the present invention is used simultaneously, only the column of technical solution of the present invention It lifts, the technical solution and its protection scope being not intended to restrict the invention.Using equivalent technologies mean, equivalent apparatus etc. to this hair The improvement of technical solution disclosed in bright claims and specification is considered to be without departing from claims of the present invention And range disclosed in specification.

Claims (9)

1. a kind of battery modules battery core holding element, which is characterized in that the battery core holding element includes heat-conducting plate, described to lead Hot plate includes heat-conducting plate main body and heat-conducting plate side plate, and the heat-conducting plate main body and the heat-conducting plate side plate are integrally formed, and are formed Channel-like configuration, the battery core holding element further include end plate and tab support conducting element, and the end plate and tab support are led Stream part is fixedly installed on the heat-conducting plate main body, integrally formed at least one metal bolumn cap inside the tab support conducting element, Fixed structure is provided on the metal bolumn cap, confluence piece will be described by the fixed structure after being directly fixedly connected with tab Confluence piece is fixed on the tab support conducting element, and the heat-conducting plate main body is equipped with aperture.
2. battery modules according to claim 1 battery core holding element, which is characterized in that the aperture according to rectangle or Helical pattern;Or the mode that the tab is fixedly connected with the confluence piece is welding;Or the fixed structure is spiral shell Silk Screw hole structure;Or the fixed structure is stud bolt arrangement.
3. battery modules according to claim 2 battery core holding element, which is characterized in that be arranged on the metal bolumn cap There is screw hole, the confluence on piece is equipped with through-hole accordingly;Or stud is provided on the metal bolumn cap, the confluence on piece phase That answers is equipped with through-hole.
4. battery modules according to claim 3 battery core holding element, which is characterized in that the confluence piece by with institute The corresponding screw of screw hole is stated to be fixed on the tab support conducting element;Or the confluence piece pass through it is corresponding with the stud Bolt is fixed on the tab support conducting element;Or the heat-conducting plate main body is identical with heat-conducting plate side plate thickness.
5. according to claim 1 to the battery core holding element of battery modules described in any claim in 4, which is characterized in that The metal bolumn cap is rectangular or round;Or the confluence piece is U-shaped or L shape;Or the end plate and the tab support Conducting element is ipsilateral;Or fixation hole is provided on the end plate;Or auxiliary securing member is provided on the end plate;Or institute It states and is provided with position limiting pile on end plate;Or the end plate is provided with empty slot;Or the tab support conducting element is provided with empty slot; Or the tab supports conducting element concordant on the heat-conducting plate main direction with the tab;Or the heat-conducting plate main body Material with heat-conducting plate side plate is metal;Or the heat-conducting plate side plate includes the first segment connecting with heat-conducting plate main body, step The second segment of section and separate heat-conducting plate main body, wherein first segment and second segment are vertical with heat-conducting plate main direction.
6. battery modules according to claim 5 battery core holding element, which is characterized in that the end plate and the tab Conducting element is supported to be integrally formed;Or the position limiting pile and the end plate are integrally formed;Or the position limiting pile at least there are two; Or the end plate is provided with limit hole, the limit hole matches the position limiting pile on adjacent battery core holding element;Or institute Stating metal is one of copper, iron, aluminium and its alloy or a variety of;Or the heat-conducting plate side plate is perpendicular to heat-conducting plate main body side Upward length is greater than the thickness of battery core, battery core at least one side and heat-conducting plate body contact;Or the step pitch of the step section with The thickness of the heat-conducting plate side plate is identical.
7. battery modules according to claim 6 battery core holding element, which is characterized in that the end plate and the tab Support conducting element and the heat-conducting plate mainboard injection molding;Or the limit hole and the end plate are integrally formed.
8. battery modules according to claim 7 battery core holding element, which is characterized in that the end plate and the tab The material for supporting conducting element is insulating materials.
9. battery modules according to claim 8 battery core holding element, which is characterized in that the insulating materials be ABS, PP, PPO or insulating epoxy plate;Or the metal bolumn cap close to the side of the tab and opposite side not by the insulating materials Covering.
CN201811468015.5A 2017-12-28 2018-12-03 A kind of battery core holding element Pending CN109994679A (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201711451939 2017-12-28
CN201711451939X 2017-12-28

Publications (1)

Publication Number Publication Date
CN109994679A true CN109994679A (en) 2019-07-09

Family

ID=67128970

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201811468015.5A Pending CN109994679A (en) 2017-12-28 2018-12-03 A kind of battery core holding element

Country Status (1)

Country Link
CN (1) CN109994679A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114631211A (en) * 2020-09-02 2022-06-14 宁德新能源科技有限公司 Electricity core subassembly and electrochemical device
CN115489982A (en) * 2022-09-16 2022-12-20 厦门海辰储能科技股份有限公司 Battery core transfer device and battery core transfer system

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114631211A (en) * 2020-09-02 2022-06-14 宁德新能源科技有限公司 Electricity core subassembly and electrochemical device
CN115489982A (en) * 2022-09-16 2022-12-20 厦门海辰储能科技股份有限公司 Battery core transfer device and battery core transfer system
CN115489982B (en) * 2022-09-16 2024-01-26 厦门海辰储能科技股份有限公司 Battery cell transfer device and battery cell transfer system

Similar Documents

Publication Publication Date Title
CN202067875U (en) Flexibly packaged battery and battery pack thereof
CN210349920U (en) Soft packet of lithium cell module structure
CN208256791U (en) A kind of soft-package battery mould group
CN205911391U (en) Laminate polymer battery basis unit module and laminate polymer battery module
CN107452933B (en) Soft packet of lithium cell module and insulating assemblies and power module
CN107706325B (en) Power module and vehicle
CN207883764U (en) A kind of battery modules
CN207883786U (en) A kind of power battery module and electric vehicle
CN106058106A (en) Battery module
CN209472013U (en) A kind of space-efficient high security battery modules
CN113675456A (en) Power type lithium ion battery monomer, power battery pack and electric vehicle
CN207381455U (en) Battery module and battery modules
CN109994679A (en) A kind of battery core holding element
CN109742304A (en) A kind of power battery module and electric vehicle
CN106450075A (en) Power battery module
CN215731862U (en) Lithium ion battery module of integrated BMS and battery pack thereof
CN108493371A (en) A kind of cylindrical battery module
US20120270096A1 (en) High-power and large-capacity lithium battery of electric bus
CN214505696U (en) Battery module for vehicle
CN206441772U (en) Soft-package battery module
EP2518794A1 (en) High-power and large-capacity lithium battery of electric bus
CN109994676A (en) A kind of battery core holding element
CN216563313U (en) Power battery system
CN203721834U (en) Lithium ion battery module with high-safety connection structure
CN109994678A (en) A kind of battery modules battery core holding element

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination